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S Abramovich-Sivan

Showing results (1-10 of 9) with videos related to

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Journal of Theoretical Biology|June 24, 1998
A PRC based model of a pacemaker cell: effect of vagal activity and investigation of the respiratory sinus arrhythmiaS Abramovich-Sivan, S Akselrod
Medical & Biological Engineering & Computing|March 4, 2000
Phase response curve based model of the SA node: simulation by two-dimensional array of pacemaker cells with randomly distributed cycle lengthsS Abramovich-Sivan, S Akselrod
Biological Cybernetics|September 22, 1998
A single pacemaker cell model based on the phase response curveS Abramovich-Sivan, S Akselrod
IEEE Transactions on Bio-Medical Engineering|April 14, 2000
A simulation of the SA node by a phase response curve-based model of a two-dimensional pacemaker cells arrayS Abramovich-Sivan, S Akselrod
Biological Cybernetics|March 13, 1999
Simulation of atrial activity by a phase response curve based model of a two-dimensional pacemaker cells array: the transition from a normal activation pattern to atrial fibrillationS Abramovich-Sivan, S Akselrod
Journal of Theoretical Biology|July 29, 1998
A phase response curve based model: effect of vagal and sympathetic stimulation and interaction on a pacemaker cellS Abramovich-Sivan, S Akselrod
Biological Cybernetics|September 22, 1998
A pacemaker cell pair model based on the phase response curveS Abramovich-Sivan, S Akselrod
Journal of Biomechanical Engineering|November 1, 1991
A combined heat clearance method for tissue blood flow measurementS Abramovich-Sivan, V Benary, T Kaspi, et al.
Clinical Autonomic Research : Official Journal of the Clinical Autonomic Research Society|December 1, 1996
The effects of lidocaine on cardiac parasympathetic control in normal subjects and in subjects after myocardial infarctionS Abramovich-Sivan, Y Bitton, J Karin, et al.
Pageof 1

Showing results (1-10 of 9) with videos related to

Sort By:
Pageof 1
Journal of Theoretical Biology|June 24, 1998
A PRC based model of a pacemaker cell: effect of vagal activity and investigation of the respiratory sinus arrhythmiaS Abramovich-Sivan, S Akselrod
Medical & Biological Engineering & Computing|March 4, 2000
Phase response curve based model of the SA node: simulation by two-dimensional array of pacemaker cells with randomly distributed cycle lengthsS Abramovich-Sivan, S Akselrod
Biological Cybernetics|September 22, 1998
A single pacemaker cell model based on the phase response curveS Abramovich-Sivan, S Akselrod
IEEE Transactions on Bio-Medical Engineering|April 14, 2000
A simulation of the SA node by a phase response curve-based model of a two-dimensional pacemaker cells arrayS Abramovich-Sivan, S Akselrod
Biological Cybernetics|March 13, 1999
Simulation of atrial activity by a phase response curve based model of a two-dimensional pacemaker cells array: the transition from a normal activation pattern to atrial fibrillationS Abramovich-Sivan, S Akselrod
Journal of Theoretical Biology|July 29, 1998
A phase response curve based model: effect of vagal and sympathetic stimulation and interaction on a pacemaker cellS Abramovich-Sivan, S Akselrod
Biological Cybernetics|September 22, 1998
A pacemaker cell pair model based on the phase response curveS Abramovich-Sivan, S Akselrod
Journal of Biomechanical Engineering|November 1, 1991
A combined heat clearance method for tissue blood flow measurementS Abramovich-Sivan, V Benary, T Kaspi, et al.
Clinical Autonomic Research : Official Journal of the Clinical Autonomic Research Society|December 1, 1996
The effects of lidocaine on cardiac parasympathetic control in normal subjects and in subjects after myocardial infarctionS Abramovich-Sivan, Y Bitton, J Karin, et al.
Pageof 1